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首页> 外文期刊>Photosynthetica >Photosynthetic net O2 evolution enhancement as a sign of acclimation to phosphorus deficiency in bean (Phaseolus vulgaris L.) leaves
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Photosynthetic net O2 evolution enhancement as a sign of acclimation to phosphorus deficiency in bean (Phaseolus vulgaris L.) leaves

机译:光合净O 2 的进化增强表明豆(Phaseolus vulgaris L.)叶片对缺磷的适应

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Primary leaves of bean (Phaseolus vulgaris L.) seedlings cultivated for 14 days in a growth chamber on complete (control) and phosphate deficient (−P) Knop liquid medium were used for measurements. The −P leaves were smaller and showed an increased specific leaf area (SLA). Their inorganic phosphate (Pi) concentration was considerably lowered. They did not show any significant changes in chlorophyll (Chl) (a + b) concentration and in their net CO2 assimilation rate when it was estimated under the conditions close to those of the seedlings growth. Light response curves of photosynthetic net O2 evolution (P NO2) of the leaves for the irradiation range up to 500 μmol(photon) m−2 s−1 were determined, using the leaf-disc Clark oxygen electrode. The measurements were taken under high CO2 concentration of about 1 % and O2 concentrations of 21 % or lowered to about 3 % at the beginning of measurement. The results obtained at 21 % O2 and the irradiations close to or higher than those used during the seedlings growth revealed the phosphorus stress suppressive effect on the leaf net O2 evolution, however, no such effect was observed at lower irradiations. Other estimated parameters of P NO2 such as: apparent quantum requirement (QRA) and light compensation point (LCP) for the control and −P leaves were similar. However, with a high irradiation and lowered O2 concentration the rate of P NO2 for the −P leaves was markedly higher than that for the control, in relation to both the leaf area and leaf fresh mass. This difference also disappeared at low irradiations, but the estimated reduced QRA values indicate, under those conditions, the increased yield of photosynthetic light reaction, especially in the −P leaves. The presented results confirm the suggestion that during the initial phase of insufficient phosphate feeding the acclimations in the light phase of photosynthesis, both structural and functional appear. They correspond, probably, to the increased energy costs of carbon assimilation under phosphorus stress, e.g. connected with raised difficulties in phosphate uptake and turnover and enhanced photorespiration. Under the experimental conditions especially advantageous for the dark phase of photosynthesis (saturating CO2 and PAR, low O2 concentration), those acclimations may be manifested as an enhancement of photosynthetic net O2 evolution.
机译:在生长室中于完全(对照)和磷酸盐缺乏(-P)Knop液体培养基上培养14天的豆(菜豆)幼苗的初级叶片用于测量。 -P叶片较小,显示出增加的比叶面积(SLA)。它们的无机磷酸盐(P i )浓度大大降低。在接近幼苗生长的条件下进行估算时,它们的叶绿素(Chl)(a + b)浓度和净CO 2 同化率没有任何显着变化。叶片光合净O 2 演化(P N O 2 )对最大500μmol(光子)照射范围的光响应曲线使用叶盘克拉克氧电极测定m −2 s -1 。在测量开始时,在大约1%的高CO 2 浓度和21%或更低的O 2 浓度下进行测量。在21%的O 2 下获得的结果以及接近或高于幼苗生长期间所用的辐照表明,磷胁迫抑制了叶片净O 2 的进化,然而,在较低的辐射下没有观察到这种效果。 P N O 2 的其他估计参数,例如:用于控制和控制的表观量子需求(QR A )和光补偿点(LCP)。 -P叶相似。然而,在高辐照度和降低的O 2 浓度下,-P叶片的P N O 2 比率显着高于-P叶片。关于叶面积和叶新鲜质量的对照。这种差异在低辐照下也消失了,但是估计的QR A 值降低表明,在这些条件下,光合光反应的产量增加,尤其是在-P叶片中。提出的结果证实了这样的建议,即在磷酸盐供料不足的初始阶段,光合作用的光合作用出现了结构性和功能性。它们可能对应于磷胁迫下碳同化增加的能源成本,例如磷。与磷酸盐吸收和转换的难度增加以及光呼吸增强有关。在特别有利于光合作用暗期的实验条件下(饱和CO 2 和PAR,低O 2 浓度),这些适应性可能表现为光合作用网的增强。 O 2 进化。

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